AbstractThe modeling of wave propagation in microstructured materials should be able to account for various scales of microstructure. Based on the proposed new exponential expansion method, we obtained the multiple explicit and exact traveling wave solutions of the strain wave equation for describing different types of wave propagation in microstructured solids. The solutions obtained in this paper include the solitary wave solutions of topological kink, singular kink, non-topological bell type solutions, solitons, compacton, cuspon, periodic solutions, and solitary wave solutions of rational functions. It is shown that the new exponential method, with the help of symbolic computation, provides an effective and straightforward mathematical ...
We prove the non existence of solitary wave solutions for an evolution equation related to a problem...
Abstract. The Mindlin-type model is used for describing the longitudinal deformation waves in micros...
Several mathematical models describing wave propagation in microstructured materials are comparative...
AbstractThe modeling of wave propagation in microstructured materials should be able to account for ...
The new approach of generalized (G′/G)-expansion method is significant, powerful and straightforward...
A generalized and improved (G′/G)-expansion method is proposed for finding more general type and new...
AbstractThe new approach of generalized (G′/G)-expansion method is significant, powerful and straigh...
In this article, a strain wave equation (SWE) is studied, which is used to model wave propagation in...
A computational scheme is employed to investigate various types of the solution of the fractional no...
Abstract. A general model of one-dimensional body with a scalar microstructure is introduced. Field ...
In this work, the () ()exp ϕ ξ −-expansion method is used for the first time to investigate the exac...
International audienceThis paper describes the mathematical models derived for wave propagation in s...
Although the theory behind solitary waves of strain shows that they hold significant promise in nond...
The exp(−F(h )) -expansion method is direct, concise and simple to carry out compared to other exis...
We apply the G′/G2-expansion method to construct exact solutions of three interesting problems in ph...
We prove the non existence of solitary wave solutions for an evolution equation related to a problem...
Abstract. The Mindlin-type model is used for describing the longitudinal deformation waves in micros...
Several mathematical models describing wave propagation in microstructured materials are comparative...
AbstractThe modeling of wave propagation in microstructured materials should be able to account for ...
The new approach of generalized (G′/G)-expansion method is significant, powerful and straightforward...
A generalized and improved (G′/G)-expansion method is proposed for finding more general type and new...
AbstractThe new approach of generalized (G′/G)-expansion method is significant, powerful and straigh...
In this article, a strain wave equation (SWE) is studied, which is used to model wave propagation in...
A computational scheme is employed to investigate various types of the solution of the fractional no...
Abstract. A general model of one-dimensional body with a scalar microstructure is introduced. Field ...
In this work, the () ()exp ϕ ξ −-expansion method is used for the first time to investigate the exac...
International audienceThis paper describes the mathematical models derived for wave propagation in s...
Although the theory behind solitary waves of strain shows that they hold significant promise in nond...
The exp(−F(h )) -expansion method is direct, concise and simple to carry out compared to other exis...
We apply the G′/G2-expansion method to construct exact solutions of three interesting problems in ph...
We prove the non existence of solitary wave solutions for an evolution equation related to a problem...
Abstract. The Mindlin-type model is used for describing the longitudinal deformation waves in micros...
Several mathematical models describing wave propagation in microstructured materials are comparative...